Spata Vincent A, Matsika Spiridoula
Department of Chemistry, Temple University, Philadelphia, PA 19122, USA.
Phys Chem Chem Phys. 2015 Dec 14;17(46):31073-83. doi: 10.1039/c5cp04254b.
In this work we study deactivation processes in adenine oligomers after absorption of UV radiation using Quantum Mechanics combined with Molecular Mechanics (QM/MM). Correlated electronic structure methods appropriate for describing the excited states are used to describe a π-stacked dimer of adenine bases incorporated into (dA)20(dT)20. The results of these calculations reveal three different types of excited state minima which play a role in deactivation processes. Within this set of minima there are minima where the excited state is localized on one adenine (monomer-like) as well as minima where the excited state is delocalized on two adenines, forming different types of excimers and bonded excimers of varying but inter-related character. The proximity of their energies reveals that the minima can decay into one another along a flat potential energy surface dependent on the interbase separation. Additionally, analysis of the emissive energies and other physical properties, including theoretical anisotropy calculations, and comparison with fluorescence experiments, provides evidence that excimers play an important role in long-lived signals in adenine oligonucleotides while the subpicosecond decay is attributed to monomer-like minima. The necessity for a close approach of the nucleobases reveals that the deactivation mechanism is tied to macro-molecular motion.
在这项工作中,我们使用量子力学与分子力学相结合的方法(QM/MM)研究了腺嘌呤低聚物在吸收紫外线辐射后的失活过程。适用于描述激发态的相关电子结构方法被用于描述并入(dA)20(dT)20中的腺嘌呤碱基的π堆积二聚体。这些计算结果揭示了三种不同类型的激发态极小值,它们在失活过程中发挥作用。在这组极小值中,有激发态定域在一个腺嘌呤上的极小值(类似单体),以及激发态离域在两个腺嘌呤上的极小值,形成不同类型的激基缔合物和具有不同但相互关联特征的键合激基缔合物。它们能量的接近程度表明,这些极小值可以沿着依赖于碱基间距离的平坦势能面相互衰变。此外,对发射能量和其他物理性质的分析,包括理论各向异性计算,并与荧光实验进行比较,提供了证据表明激基缔合物在腺嘌呤寡核苷酸的长寿命信号中起重要作用,而亚皮秒衰变归因于类似单体的极小值。核碱基紧密靠近的必要性表明失活机制与大分子运动相关。